CN209642738U - Terminal device - Google Patents
Terminal device Download PDFInfo
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- CN209642738U CN209642738U CN201920699951.0U CN201920699951U CN209642738U CN 209642738 U CN209642738 U CN 209642738U CN 201920699951 U CN201920699951 U CN 201920699951U CN 209642738 U CN209642738 U CN 209642738U
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- material layer
- conductive material
- thermal conductive
- terminal device
- battery cover
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Abstract
The utility model discloses a kind of terminal device, it includes shell (100), rear camera (200) and thermal conductive material layer (300), the shell (100) includes battery cover (110), the battery cover (110) offers the first avoid holes (111), inside of thermal conductive material layer (300) setting in the battery cover (110), and the thermal conductive material layer (300) offers the second avoid holes (310), the rear camera (200) is installed on the shell (100) and sequentially passes through second avoid holes (310) and first avoid holes (111), the thermal conductive material layer (300) is connected with the rear camera (200).Above scheme, which can solve current terminal device, has that heat dissipation performance is poor.
Description
Technical field
The utility model relates to technical field of communication equipment more particularly to a kind of terminal devices.
Background technique
With the high speed development of terminal device, the function of the shooting mould group of terminal equipment configuration is stronger and stronger.With with
Family is more and more frequent to the use of shooting, while putting forward higher requirements to functions such as the high pixel of shooting mould group, quick focusing.
As the pixel of shooting mould group is higher and higher, volume is smaller and smaller, and function is more and more, and shooting mould group generates during the work time
Fever phenomenon it is also increasingly severe.The surface temperature rise that this eventually results in terminal device is higher, influences the usage experience of user.
At the same time, the temperature of shooting mould group is too high can seriously affect photosensitive effect, it may appear that noise, flower screen etc. influence shooting picture matter
The phenomenon that amount, shooting can be terminated by extending to.The heat dissipation performance for how improving terminal device is the Main way designed at present.
Current terminal device generally includes rear camera, for this purpose, the battery cover of terminal device offers avoid holes, after
Camera is set to stretch out from avoid holes.Correspondingly, the thermal conductive material layer for being set to battery cover inner surface is also required to open up avoid holes,
This causes thermal conductive material layer that can not carry out heat dissipation with rear camera to contact, eventually result in that thermal conductive material layer is more difficult to take the photograph postposition
The heat generated as head removes in time, and current terminal device still has the poor problem that radiates.
Utility model content
The utility model discloses a kind of terminal device, is asked with solving current terminal device there are heat dissipation performance is poor
Topic.
To solve the above-mentioned problems, the utility model adopts the following technical solutions:
A kind of terminal device, including shell, rear camera and thermal conductive material layer, the shell includes battery cover, described
Battery cover offers the first avoid holes, and the inside of the battery cover, and the thermal conductive material layer is arranged in the thermal conductive material layer
The second avoid holes are offered, the rear camera is installed on the shell and sequentially passes through second avoid holes and described
One avoid holes, the thermal conductive material layer are connected with the rear camera.
The technical solution adopted in the utility model can reach it is following the utility model has the advantages that
Terminal device disclosed by the utility model, by being connected on rear camera to thermal conductive material layer, postposition camera shooting
The heat generated in the head course of work can be conducted away by thermal conductive material layer, be conducted by thermal conductive material layer large area to battery cover,
Finally the heat generated in the rear camera course of work is enabled to more efficiently to pass through battery cover to be removed, and then can mentioned
The heat dissipation performance of high terminal device.
Detailed description of the invention
Attached drawing described herein is used to provide a further understanding of the present invention, and constitutes one of the utility model
Point, the exemplary embodiment of the utility model and the description thereof are used to explain the utility model, does not constitute to the utility model
Improper restriction.In the accompanying drawings:
Fig. 1 is a kind of partial structure diagram of terminal device disclosed in the utility model embodiment;
Fig. 2 is the partial structure diagram of another kind terminal device disclosed in the utility model embodiment;
Fig. 3 is the partial structure diagram of another terminal device disclosed in the utility model embodiment.
Description of symbols:
100- shell, 110- battery cover, the first avoid holes of 111-, 120- mainboard lower cover, 121- third avoid holes, 130- master
Plate upper cover, the 4th avoid holes of 131-, 140- center,
200- rear camera, 210- camera case ring, 211- supporting surface, 220- camera body, 230- camera
Eyeglass,
300- thermal conductive material layer, the second avoid holes of 310-,
400- mainboard, 410- grounding elastic slice, 420- ground plane, the 5th avoid holes of 430-,
500- display module, the first glue-line of 600-, the second glue-line of 700-, 800- third glue-line.
Specific embodiment
It is specific below in conjunction with the utility model to keep the purpose of this utility model, technical solution and advantage clearer
Technical solutions of the utility model are clearly and completely described in embodiment and corresponding attached drawing.Obviously, described embodiment
It is only the utility model a part of the embodiment, instead of all the embodiments.Based on the embodiments of the present invention, this field
Those of ordinary skill's every other embodiment obtained without making creative work, belongs to the utility model
The range of protection.
Below in conjunction with attached drawing, technical solution disclosed in each embodiment of the utility model is described in detail.
Fig. 1-Fig. 3 is please referred to, the utility model embodiment discloses a kind of terminal device, and disclosed terminal device includes shell
Body 100, rear camera 200 and thermal conductive material layer 300.
Shell 100 is the basic component of terminal device, and shell 100 can provide peace for other component parts of terminal device
Dress basis, such as terminal device includes display module 500, display module 500 is mounted on shell 100.Shell 100 includes battery
Lid 110, battery cover 110 offer the first avoid holes 111.
The composition component of shell 100 can there are many, referring again to Fig. 1, in a kind of specific embodiment, shell
100 may include battery cover 110, mainboard lower cover 120, mainboard upper cover 130 and center 140, battery cover 110 and mainboard upper cover 130
Can be separately fixed on the both-side opening of center 140, mainboard lower cover 120 setting battery cover 110, mainboard upper cover 130 and in
In the inner cavity that frame 140 is formed.Display module 500 is usually fixed in mainboard upper cover 130 by way of being adhesively fixed.This is practical
New embodiment does not limit the concrete composition structure of shell 100.
Rear camera 200 is installed on shell 100, and rear camera 200 is towards the side being away from each other with display module 500
To in the utility model embodiment, the part-structure of rear camera 200 is located within shell 100.
The inside of battery cover 110 is arranged in thermal conductive material layer 300, and thermal conductive material layer 300 can be realized heat in large area
In the range of conduct.Since 200 part-structure of rear camera is located within shell 100, rear camera 200 is needed through electricity
The acquisition of image is carried out after pond lid 110.In the utility model embodiment, battery cover 110 offers the first avoid holes 111, thermally conductive
Material layer 300 offers the second avoid holes 310, and the first avoid holes 111 and the second avoid holes 310 are oppositely arranged.
Thermal conductive material layer 300 disclosed in the utility model embodiment can be graphite radiating film, graphene film, copper foil, aluminium
Foil, graphite copper carbon-coating etc., the specific material of the unlimited thermal conductive material layer 300 processed of the utility model embodiment.
Rear camera 200 sequentially passes through the second avoid holes 310 and the first avoid holes 111, and then part may be implemented and stretch
Out except battery cover 110.Thermal conductive material layer 300 is connected with rear camera 200, so as to rear camera 200 in work
The heat generated in work is conducted.
Terminal device disclosed in the utility model embodiment, by being connected to rear camera 200 to thermal conductive material layer 300
On, the heat generated in 200 course of work of rear camera can be conducted away by thermal conductive material layer 300, big by thermal conductive material layer 300
On surface conductance to battery cover 110, the heat for finally enabling to rear camera 200 to generate during the work time is more efficiently
It is removed by battery cover 110, and then can be improved the heat dissipation performance of terminal device.
It include the premise of mainboard lower cover 120 and mainboard upper cover 130 in the shell of terminal device referring again to Fig. 1-Fig. 3
Under, since the thickness of rear camera 200 is usually larger, mainboard lower cover 120 can offer third avoid holes 121, main
Plate upper cover 130 can offer the 4th avoid holes 131.Third avoid holes 121 and the 4th avoid holes 131 with the first avoid holes
111 and second avoid holes 310 be oppositely arranged, and then passing through for rear camera 200.
There are many modes that thermal conductive material layer 300 is connect with rear camera 200, and specifically, rear camera 200 has
Towards the supporting surface 211 of battery cover 110, thermal conductive material layer 300 be fixed on supporting surface 211 and battery cover 110 inner surface it
Between.In such cases, the heat that rear camera 200 generates during working is transferred directly to by thermal conductive material layer 300
Battery cover 110, and then realize more efficient thermally conductive.
Thermal conductive material layer 300 is fixed on there are many modes between supporting surface 211 and battery cover 110, such as Heat Conduction Material
Layer 300 can be clamped and fixed between supporting surface 211 and battery cover 110.
In order to facilitate assembling, in more preferably scheme, thermal conductive material layer 300 can be bonded in the interior of battery cover 110
Side surface, thermal conductive material layer 300 can be adhesively fixed with supporting surface 211 by the first glue-line 600, in specific assembling process
In, thermal conductive material layer 300 can first be fixed on the inner surface of battery cover 110, be then connected to battery cover 110 and pass through the first glue-line
600 realizations are adhesively fixed with supporting surface 211.
It is, of course, also possible to be, thermal conductive material layer 300 can be bonded on supporting surface 211, and thermal conductive material layer 300 can lead to
It is Nian Jie with the inner surface of battery cover 110 connected to cross the second glue-line 700, in specific operating process, assembly crewman can be first
Thermal conductive material layer 300 is bonded on supporting surface 211, is then realizing the inside table with battery cover 110 by the second glue-line 700
Bonding between face.
As described above, shell 100 may include mainboard lower cover 120, thermal conductive material layer 300 be located at mainboard lower cover 120 with
Between battery cover 110, thermal conductive material layer 300 can be equal with mainboard lower cover 120 and supporting surface 211 away from the surface of battery cover 110
Bonding is connected, as shown in Fig. 2, in this case, the heat generated in 200 course of work of rear camera is transmitted to Heat Conduction Material
After layer 300, it can be removed outward by mainboard lower cover 120 and battery cover 110.
Terminal device disclosed in the utility model embodiment can also include mainboard 400, and mainboard 400 is located at mainboard upper cover
Between 130 and mainboard lower cover 120.Mainboard 400 can offer the 5th avoid holes 430, and rear camera 200 can pass through the 5th
Avoid holes 430.Rear camera 200 includes camera case ring 210, and mainboard 400 can provide peace for camera case ring 210
Dress support.
In the utility model embodiment, rear camera 200 includes camera case ring 210 and camera body 220, is taken the photograph
Picture head ontology 220 is arranged within camera case ring 210, and camera eyeglass can be equipped on camera case ring 210
230, camera body 220 is implemented to protect to realize, camera case ring 210 is supported on mainboard 400.
The inside of battery cover 110 is arranged in thermal conductive material layer 300, and thermal conductive material layer 300 is connected with rear camera 200,
To which heat is conducted the region low to heat flow density from the high region of heat flow density.
There are many modes for realizing above-mentioned installation requirement, and referring again to Fig. 3, thermal conductive material layer 300 can be with bonding partially
In the inner surface of battery cover 110, the part that thermal conductive material layer 300 surrounds the second avoid holes 310 can be folded in camera dress
Between decorative circle 210 and mainboard 400, in such cases, thermal conductive material layer 300 can not only conduct the heat of camera case ring 210,
And the heat on mainboard 400 can also be conducted.In such cases, the heat generated in the work of rear camera 200 can pass through camera shooting
In the head conduction to thermal conductive material layer 300 of case ring 210.
Supporting surface 211 can be set on camera case ring 210, decorate in the setting of thermal conductive material layer 300 in camera
In the case where between circle 210 and mainboard 400, supporting surface 211 can pass through third glue-line 800 with the inner surface of battery cover 110
It is adhesively fixed.
In order to improve heat dissipation performance, camera case ring 210 can be metal ornamental ring, such as stainless steel case ring.Afterwards
It sets camera 200 to be possible to that electrostatic can be generated in the process of work, is based on this, more preferably in scheme, mainboard 400 can be with
It is provided with ground plane 420, as depicted in figs. 1 and 2, camera case ring 210 is supported on the ground plane 420 of mainboard 400, thus
Realize the ground connection of camera case ring 210.
In the utility model embodiment, ground plane 420 may include conducting foam, conducting resinl, conductive fabric, copper foil, aluminium foil
Equal materials, the utility model embodiment do not limit the specific material of ground plane 420.
Certainly, in terminal device shown in Fig. 3, since the setting of thermal conductive material layer 300 is in camera case ring 210 and master
Between plate 400, therefore, in order to realize the ground connection of camera case ring 210, mainboard 400 can be set grounding elastic slice 410, connect
Ground elastic slice 410 can be with 210 grounding connection of camera case ring.
Terminal device disclosed in the utility model embodiment can be mobile phone, tablet computer, E-book reader, game
The terminal devices such as machine, wearable device (such as smartwatch), the utility model embodiment do not limit specific kind of terminal device
Class.
Emphasis describes the difference between each embodiment in the utility model foregoing embodiments, between each embodiment
As long as different optimization feature non-contradiction, can combine to form more preferably embodiment, it is contemplated that style of writing is succinct, this then no longer
It repeats.
The above description is only the embodiments of the present invention, is not intended to limit the utility model.For this field
For technical staff, various modifications and changes may be made to the present invention.All institutes within the spirit and principle of the utility model
Any modification, equivalent substitution, improvement and etc. of work, should be included within the scope of the claims of the utility model.
Claims (10)
1. a kind of terminal device, which is characterized in that including shell (100), rear camera (200) and thermal conductive material layer (300),
The shell (100) includes battery cover (110), and the battery cover (110) offers the first avoid holes (111), the heat conduction material
The bed of material (300) is arranged in the inside of the battery cover (110), and the thermal conductive material layer (300) offers the second avoid holes
(310), the rear camera (200) is installed on the shell (100) and sequentially passes through second avoid holes (310) and institute
It states the first avoid holes (111), the thermal conductive material layer (300) is connected with the rear camera (200).
2. terminal device according to claim 1, which is characterized in that the rear camera (200) has described in
The supporting surface (211) of battery cover (110), the thermal conductive material layer (300) are fixed on the supporting surface (211) and the battery cover
(110) between inner surface.
3. terminal device according to claim 2, which is characterized in that the thermal conductive material layer (300) is bonded in the electricity
The inner surface of Chi Gai (110), the thermal conductive material layer (300) are Nian Jie by the first glue-line (600) with the supporting surface (211)
It is fixed.
4. terminal device according to claim 2, which is characterized in that the thermal conductive material layer (300) is bonded in the branch
On support face (211), the thermal conductive material layer (300) is viscous by the inner surface of the second glue-line (700) and the battery cover (110)
It connects connected.
5. terminal device according to claim 4, which is characterized in that the shell (100) includes mainboard lower cover (120),
The thermal conductive material layer (300) is between the mainboard lower cover (120) and the battery cover (110), the thermal conductive material layer
(300) Nian Jie connected away from the surface of the battery cover (110) and the mainboard lower cover (120) and the supporting surface (211).
6. terminal device according to claim 1, which is characterized in that the terminal device includes mainboard (400), after described
Set the camera body that camera (200) includes camera case ring (210) and is set in the camera case ring (210)
(220), the camera case ring (210) is supported in the mainboard (400).
7. terminal device according to claim 6, which is characterized in that thermal conductive material layer (300) bonding partially is in institute
The inner surface of battery cover (110) is stated, the thermal conductive material layer (300) surrounds the part sandwiched of second avoid holes (310)
Between the camera case ring (210) and the mainboard (400).
8. terminal device according to claim 7, which is characterized in that the camera case ring (210) is metal finishing
Circle, the mainboard (400) are provided with grounding elastic slice (410), the grounding elastic slice (410) and the camera case ring (210)
Grounding connection.
9. terminal device according to claim 7, which is characterized in that the camera case ring (210) includes towards institute
The supporting surface (211) of battery cover (110) is stated, the supporting surface (211) passes through third glue-line (800) and the battery cover (110)
Inner surface be adhesively fixed.
10. terminal device according to claim 1 to 9, which is characterized in that thermal conductive material layer (300) packet
Include at least one of graphite radiating film, graphene film, copper foil, aluminium foil and graphite copper carbon-coating.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920699951.0U CN209642738U (en) | 2019-05-15 | 2019-05-15 | Terminal device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920699951.0U CN209642738U (en) | 2019-05-15 | 2019-05-15 | Terminal device |
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CN209642738U true CN209642738U (en) | 2019-11-15 |
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CN201920699951.0U Active CN209642738U (en) | 2019-05-15 | 2019-05-15 | Terminal device |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112822374A (en) * | 2021-01-27 | 2021-05-18 | 维沃移动通信有限公司 | Camera module and electronic equipment |
CN115278022A (en) * | 2022-07-28 | 2022-11-01 | 维沃移动通信有限公司 | Electronic device |
-
2019
- 2019-05-15 CN CN201920699951.0U patent/CN209642738U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112822374A (en) * | 2021-01-27 | 2021-05-18 | 维沃移动通信有限公司 | Camera module and electronic equipment |
CN115278022A (en) * | 2022-07-28 | 2022-11-01 | 维沃移动通信有限公司 | Electronic device |
CN115278022B (en) * | 2022-07-28 | 2024-04-26 | 维沃移动通信有限公司 | Electronic equipment |
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